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Complex agent interactions in operational simulations for aerospace design

Complex agent interactions in operational simulations for aerospace design
Complex agent interactions in operational simulations for aerospace design
Product complexity in the aerospace industry has grown fast while design procedures and techniques did not keep pace. Product life cycle implications are largely neglected during the early design phase. Also, aerospace designers fail to optimize products for the intended operational environment. This study shows how a design, simulated within its anticipated operational environment, can inform about critical design parameters, thereby creating a more targeted design improving the chance of commercial success. An agent-based operational simulation for civil Unmanned Aerial Vehicles conducting maritime Search-and-Rescue missions is used to design and optimize aircrafts. Agent interactions with their environment over the product life-cycle are shown to lead to unexpected model outputs. Unique insights into the optimal design are gained by analysis of the operational performance of the aircraft within its simulated environment
Schumann, Benjamin
04102357-2f80-4a4f-b2d3-ad34c3b51a05
Scanlan, James
7ad738f2-d732-423f-a322-31fa4695529d
Fangohr, Hans
9b7cfab9-d5dc-45dc-947c-2eba5c81a160
Schumann, Benjamin
04102357-2f80-4a4f-b2d3-ad34c3b51a05
Scanlan, James
7ad738f2-d732-423f-a322-31fa4695529d
Fangohr, Hans
9b7cfab9-d5dc-45dc-947c-2eba5c81a160

Schumann, Benjamin, Scanlan, James and Fangohr, Hans (2013) Complex agent interactions in operational simulations for aerospace design. 2012 Winter Simulation Conference, , Berlin, Germany. 09 - 12 Dec 2012. 12 pp . (doi:10.1109/WSC.2012.6465066).

Record type: Conference or Workshop Item (Paper)

Abstract

Product complexity in the aerospace industry has grown fast while design procedures and techniques did not keep pace. Product life cycle implications are largely neglected during the early design phase. Also, aerospace designers fail to optimize products for the intended operational environment. This study shows how a design, simulated within its anticipated operational environment, can inform about critical design parameters, thereby creating a more targeted design improving the chance of commercial success. An agent-based operational simulation for civil Unmanned Aerial Vehicles conducting maritime Search-and-Rescue missions is used to design and optimize aircrafts. Agent interactions with their environment over the product life-cycle are shown to lead to unexpected model outputs. Unique insights into the optimal design are gained by analysis of the operational performance of the aircraft within its simulated environment

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More information

Submitted date: 3 April 2012
e-pub ahead of print date: 21 February 2013
Published date: 21 February 2013
Venue - Dates: 2012 Winter Simulation Conference, , Berlin, Germany, 2012-12-09 - 2012-12-12
Related URLs:
Organisations: Computational Engineering & Design Group

Identifiers

Local EPrints ID: 336693
URI: http://eprints.soton.ac.uk/id/eprint/336693
PURE UUID: ee7429ce-3b8d-477b-8f6e-6e75238644a2
ORCID for Hans Fangohr: ORCID iD orcid.org/0000-0001-5494-7193

Catalogue record

Date deposited: 11 Apr 2012 09:13
Last modified: 15 Mar 2024 03:03

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Contributors

Author: Benjamin Schumann
Author: James Scanlan
Author: Hans Fangohr ORCID iD

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